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The sensor chip is an radio frequency (RF) transceiver designed for low-power and low-voltage wireless applications and has a programmable output power, varying in eight steps between −25 and 0 dBm.
The mote also includes a Chipcon CC2420 [18] IEEE 802.15.4 radio system equipped with a 2.4 GHz RF transceiver designed for low-power wireless applications with an effective data rate of 250 kbps.
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It can transmit both multimode and single-mode signals using transceivers designed for either multimode fiber or single-mode fiber.
Short transmission range is a common constraint for low-power RF transceivers designed for embedded applications with limited energy [6, 7], often supplied by harvested operations [8].
We now consider a transceiver design for attaining the bound for best relay selection.
The joint transceiver designs for FD K-Pair Minterferenceenchannelnel with SWIPT is considered in [47].
However, these existing works cannot be extended to robust transceiver design for the MIMO IC [21].
The joint transceiver design for a FD cloud radio access network with SWIPT is considered in [46].
In [25 27], transceiver designs for AF MIMO relaying systems are discussed based on this imperfect CSI model.
This poses stringent constraints on the sensor and the radio transceiver design for minimizing the energy consumption.
This paper focuses on robust transceiver design for throughput enhancement on the interference channel (IC), under imperfect channel state information (CSI).
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